Mechanism of Deltamethrin induced Immunotoxicity: Current and Future Perspectives

Anoop Kumar, A. Bhaskar, Saket Chandra, D. Sasmal, K. Mukhopadhyay, Neelima Sharma
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引用次数: 11

Abstract

The immune system is the most vulnerable system regarding toxicity of pesticides. Any alteration in the immune functions makes an individual immunocompromised and more susceptible to cancer, infections, autoimmunity and allergies. Deltamethrin is the most popular type 2 pyrethroid insecticide which is widely use in agriculture and home due to restriction on the organophosphate insecticides. Due to their extensive use, it becomes an increasingly serious source of chemical pollution. We all are exposed to deltamethrin through inhalation, ingestion and dermal contact. It has been demonstrated that deltamethrin alters the immune response signalling pathways, but its mechanism of immunotoxicity is still an open question for researchers to be explored. Thus, herein we tried to understand the mechanism of deltamethrin induced immunotoxicity. Possibilities of deltamethrin induced other immunotoxic signalling pathways have also been discussed and should be considered in future studies. Further, current challenges and future perspectives have been also discussed.
溴氰菊酯免疫毒性机制:现状与未来展望
免疫系统是农药毒性反应中最脆弱的系统。免疫功能的任何改变都会使个体免疫功能受损,更容易患癌症、感染、自身免疫和过敏。溴氰菊酯是最常用的2型拟除虫菊酯类杀虫剂,由于有机磷杀虫剂的限制,在农业和家庭中广泛使用。由于它们的广泛使用,它成为越来越严重的化学污染源。我们都通过吸入、摄入和皮肤接触接触到溴氰菊酯。溴氰菊酯可以改变免疫应答信号通路,但其免疫毒性机制仍是一个有待研究的开放性问题。因此,我们试图了解溴氰菊酯诱导免疫毒性的机制。溴氰菊酯诱导其他免疫毒性信号通路的可能性也已被讨论,并应在未来的研究中予以考虑。此外,还讨论了当前的挑战和未来的展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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